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A comparison of conventional and non-conventional treatment technologies on arsenic removal from water

机译:常规和非常规处理技术从水中去除砷的比较

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In this study, four treatment methods were used to remove arsenic from water, namely: ⅰ) chemical precipitation, (ⅱ) arsenic adsorption onto iron-oxide-coated sand, (ⅲ) high-rate saturated floating-medium flocculator/filter and (ⅳ) membrane hybrid system (adsorption-microfiltration). The results indicated that more than 90% of total arsenic was removed by using FeCl_3 (40 mg/L) as coagulant. The removal efficiency was 10% lower when polysilicato-iron (PSI, 2.5 mg/L) was used as a flocculant. The results of both the batch and column adsorption studies showed that iron-oxide-coated sand can effectively be used to achieve very high levels of arsenic removal (less than 5 μm/L as As in drinking water). Arsenic was removed up to 78% from the packed polystyrene beads filter with in-line FeCl_3 addition at a high loading rate of 30 m~3/m~2.h. When powder activated carbon (PAC) was used in the membrane hybrid system, 87% removal of arsenic was achieved. A mixing time of 2.7 min with the mixing intensity of 87.8 s~(-1) were used. A very high filtration (permeate flux of 760 L/m~2.h) was observed with a membrane of pore size of 0.2 μm.
机译:在这项研究中,我们采用了四种处理方法从水中去除砷,分别是:ⅰ化学沉淀,ⅱ砷吸附在氧化铁涂层的沙子上,ⅲ高速饱和漂浮介质絮凝剂/过滤器和( ⅳ)膜混合系统(吸附-微滤)。结果表明,使用FeCl_3(40 mg / L)作为凝结剂可去除90%以上的总砷。当使用聚硅铁(PSI,2.5 mg / L)作为絮凝剂时,去除效率降低了10%。分批吸附和柱吸附研究的结果表明,铁氧化物涂层的砂可以有效地实现很高的除砷水平(饮用水中的砷含量小于5μm/ L)。在管线中加入FeCl_3并以30 m〜3 / m〜2.h的高加载速率从填充的聚苯乙烯珠粒过滤器中除去高达78%的砷。在膜混合系统中使用粉末活性炭(PAC)时,砷的去除率达到了87%。混合时间为2.7分钟,混合强度为87.8 s〜(-1)。膜的孔径为0.2μm,过滤效率很高(渗透通量为760 L / m〜2.h)。

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